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并苯并噻二唑作为手性发光体。

Helicene Appended Benzothiadiazoles as Chiral Emitters.

作者信息

Martin Kévin, Aharon Tal, Mastropasqua Talamo Maurizio, Hauser Andreas, Bürgi Thomas, Vanthuyne Nicolas, Caricato Marco, Avarvari Narcis

机构信息

Univ Angers, CNRS, MOLTECH-Anjou SFR MATRIX, F-49000, Angers, France.

Department of Chemistry, University of Kansas, 1567 Irving Hill Road, Lawrence, Kansas, 66045, United States of America.

出版信息

Chemistry. 2024 Jul 25;30(42):e202401413. doi: 10.1002/chem.202401413. Epub 2024 Jul 3.

Abstract

A homologous series of 4,7-bis(aryl) substituted benzothiadiazole (BTD) compounds, containing the helicenic derivatives bis([4]helicene), bis([5]helicene) and bis([6]helicene), have been prepared upon a double Suzuki coupling between 3,6-bis(pinacolyl-borane)-BTD and the corresponding bromo-aryl precursors. The single crystal X-ray structure of the bis([4]helicene) compound shows the existence of both helicities (M) and (P) on the same molecule. All the compounds of the series are highly emissive in solution, with quantum yields of the emission ranging from 50 to 91 %. The enantiopure compounds (M,M) and (P,P) for the BTD-bis([6]helicene) have been prepared from the corresponding enantiopure 2-bromo-[6]helicene precursors. Their chiroptical properties have been investigated in correlation with density functional theory (DFT) calculations, which allowed to confidently assign the absolute configuration of the helicene arms and to characterize the different electronic transitions, including the low energy charge transfer excitation from helicenes to BTD. The enantiomerically pure fluorophores (M,M)- and (P,P)-BTD-bis([6]helicene), which exist in solution as two main conformers, according to the DFT calculations, show CPL activity in solution, with g factors of ≈1.7×10 at λ=525 nm, and also in the solid state, with g factors of ≈1.2×10 in spite of the strong decrease of the quantum efficiency.

摘要

通过3,6-双(频哪醇硼酸酯)-苯并噻二唑(BTD)与相应的溴代芳基前体之间的双铃木偶联反应,制备了一系列含有螺旋烯衍生物双([4]螺旋烯)、双([5]螺旋烯)和双([6]螺旋烯)的4,7-双(芳基)取代苯并噻二唑(BTD)化合物。双([4]螺旋烯)化合物的单晶X射线结构表明,同一分子上同时存在两种螺旋构型(M)和(P)。该系列所有化合物在溶液中均具有高发射性,发射量子产率在50%至91%之间。BTD-双([6]螺旋烯)的对映体纯化合物(M,M)和(P,P)是由相应的对映体纯2-溴-[6]螺旋烯前体制备的。研究了它们的手性光学性质,并与密度泛函理论(DFT)计算相关联,这使得能够可靠地确定螺旋烯臂的绝对构型,并表征不同的电子跃迁,包括从螺旋烯到BTD的低能量电荷转移激发。根据DFT计算,对映体纯荧光团(M,M)-和(P,P)-BTD-双([6]螺旋烯)在溶液中以两种主要构象存在,在溶液中显示CPL活性,在λ=525 nm时g因子约为1.7×10,在固态中也显示CPL活性,尽管量子效率大幅降低,g因子约为1.2×10。

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